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Plasmonic metal-semiconductor photocatalysts and photoelectrochemical cells: a review

机译:电浆金属半导体接触催化剂和光电化学电池:审查

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The incorporation of plasmonic metals into semiconductors is a promising route to improve the performance of photocatalysts and photoelectrochemical cells. This article summarizes the three major mechanisms of plasmonic energy transfer from a metal to a semiconductor, including light scattering/trapping, plasmon-induced resonance energy transfer (PIRET) and hot electron injection (also called direct electron transfer (DET)). It also discusses the rational design of plasmonic metal-semiconductor heterojunctions based on the underlying plasmonic energy transfer mechanisms. Moreover, this article highlights the applications of plasmonic photocatalysts and photoelectrochemical cells in solar water splitting, carbon dioxide reduction and environmental pollutant decomposition.
机译:金属的电浆半导体是一种很有前途的途径改善催化剂的性能光电化学电池。总结了三个主要的机制从金属到电浆能量转移半导体,包括光散射/捕获,plasmon-induced共振电子能量传递(PIRET)和热注射(也称为直接电子转移(精细))。电浆金属半导体接触垂直基于底层电浆能量转移机制。电浆催化剂的应用光电化学电池的太阳能水减少和分裂,二氧化碳环境污染物分解。

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